August 2025

Conference Paper

CaliQEC: In-situ Qubit Calibration for Surface Code Quantum Error Correction

By:
Fang, Xiang; Yin, Keyi; Zhu, Yuchen; Ruan, Jixuan; Tullsen, Dean; Liang, Zhiding; Sornborger, Andrew; Li, Ang; Humble, Travis S; Ding, Yufei; Shi, Yunong
Page Number:
1402-1416
Book Title:
ISCA '25: Proceedings of the 52nd Annual International Symposium on Computer Architecture
Publication Date:
August 13, 2025
Publisher Location:
Association for Computing Machinery, New York, United States of America
Conference Name:
52nd Annual International Symposium on Computer Architecture (ISCA 2025)
Conference Location:
Tokyo, Japan
Conference Sponsor:
ACM SIGARCH
View DOI Listing:
https://doi.org/10.1145/3695053.3731042

Abstract

Quantum Error Correction (QEC) is essential for fault-tolerant, large-scale quantum computation. However, error drift in qubits undermines QEC performance during long computations, necessitating frequent calibration. Conventional calibration methods disrupt quantum states, requiring system downtime and rendering in situ calibration impractical. To address this challenge, we propose QECali, a novel framework that enables in situ calibration for surface codes. Our evaluation demonstrates that QECali introduces modest qubit overhead and negligible increases in execution time, offering the first practical solution for in situ calibration in surface code based quantum computation.


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